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首页> 外文期刊>International Journal of Photoenergy >Characterization of the Pore Filling of Solid State Dye Sensitized Solar Cells with Photoinduced Absorption Spectroscopy
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Characterization of the Pore Filling of Solid State Dye Sensitized Solar Cells with Photoinduced Absorption Spectroscopy

机译:固态染料敏化太阳能电池孔填充的光诱导吸收光谱表征

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摘要

Near steady-state photoinduced absorption (PIA) and UV-Vis absorption spectroscopy are used to characterize the pore filling of spiro-MeOTAD (2,2′,7,7′-tetrakis-(N,N-di-p-methoxyphenylamine)9,9′-spirobifluorene) into the nanoparticulate TiO2electrode of a solid-state dye-sensitized solar cell (ssDSC). The volumetric ratio of filled to unfilled pore volumes, as well as the optical signature of interacting chemical species, that is, the hole-transfer yield (HTY), are investigated. PIA spectroscopy is used to measure the HTY, relative to the amount of spiro-MeOTAD present, without needing to determine the extinction coefficients of the dye and spiro-MeOTAD cation species. The Beer-Lambert law is used to relate the relative PIA signal to the penetration length of the hole-conductor in the TiO2film. For the sample thickness range of1.4–5 μm investigated here, the optimum characteristic penetration length is determined to be3.1+0.46 μm, which is compared to 1.4 μm for the 200 mgmL−1concentration of spiro-MeOTAD conventionally used. Therefore, doubling the effective penetration of spiro-MeOTAD is necessary to functionalize all the dye molecules in a ssDSC.
机译:近稳态光致吸收(PIA)和紫外可见吸收光谱用于表征螺-MeOTAD(2,2',7,7'-四-(N,N-二-对甲氧基苯胺)的孔填充9,9'-螺双芴)进入固态染料敏化太阳能电池(ssDSC)的纳米TiO2电极中。研究了填充孔与未填充孔的体积比,以及相互作用的化学物质的光学特征,即空穴传输产率(HTY)。 PIA光谱用于测量HTY,相对于存在的螺-MeOTAD的量,而无需确定染料和螺-MeOTAD阳离子物种的消光系数。使用比尔-朗伯定律将相对PIA信号与TiO2膜中空穴导体的穿透长度相关联。对于此处研究的样品厚度范围为1.4-5μm,最佳特征穿透长度确定为3.1 +0.46μm,而常规使用的200-mgmL-1浓度的spiro-MeOTAD为1.4μm。因此,有必要使spiro-MeOTAD的有效渗透率加倍,以功能化ssDSC中的所有染料分子。

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